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Bioinformatic analysis of meningococcal Msf and Opc to inform vaccine antigen design
Clio A Andreae1, Richard B Sessions2, Mumtaz Virji1
1School of Cellular and Molecular Medicine, University of Bristol, Bristol, United Kingdom.
Abstract:
Neisseria meningitidis is an antigenically and genetically variable Gram-negative bacterium and a causative agent of meningococcal meningitis and septicaemia. Meningococci encode many outer membrane proteins, including Opa, Opc, Msf, fHbp and NadA, identified as being involved in colonisation of the host and evasion of the immune response. Although vaccines are available for the prevention of some types of meningococcal disease, none currently offer universal protection. We have used sequences within the Neisseria PubMLST database to determine the variability of msf and opc in 6,500 isolates. In-silico analysis revealed that although opc is highly conserved, it is not present in all isolates, with most isolates in clonal complex ST-11 lacking a functional opc. In comparison, msf is found in all meningococcal isolates, and displays diversity in the N-terminal domain. We identified 20 distinct Msf sequence variants (Msf SV), associated with differences in number of residues within the putative Vn binding motifs. Moreover, we showed distinct correlations with certain Msf SVs and isolates associated with either hyperinvasive lineages or those clonal complexes associated with a carriage state. We have demonstrated differences in Vn binding between three Msf SVs and generated a cross reactive Msf polyclonal antibody. Our study has highlighted the importance of using large datasets to inform vaccine development and provide further information on the antigenic diversity exhibited by N. meningitidis.
Insights
Neisseria meningitidis outer membrane proteins msf and opc show significant variability. Understanding this antigenic diversity in meningococci is crucial for developing broadly protective vaccines against meningitis and septicaemia.
Area of Science:
- Microbiology
- Immunology
- Vaccinology
Background:
- Neisseria meningitidis causes meningitis and septicaemia, with outer membrane proteins aiding colonization and immune evasion.
- Current meningococcal vaccines do not offer universal protection due to bacterial variability.
Purpose of the Study:
- To analyze the variability of msf and opc outer membrane proteins in Neisseria meningitidis.
- To inform the development of more effective meningococcal vaccines.
Main Methods:
- In-silico analysis of msf and opc gene sequences from 6,500 Neisseria meningitidis isolates using the Neisseria PubMLST database.
- Identification and characterization of sequence variants (SVs) and their association with different bacterial lineages.
Main Results:
- The opc gene is conserved but not universally present, often absent in ST-11 clonal complexes.
- The msf gene is present in all isolates, with 20 distinct sequence variants (Msf SVs) identified, showing N-terminal domain diversity.
- Specific Msf SVs correlated with hyperinvasive or carriage-associated meningococcal lineages.
- Differences in Vitronectin (Vn) binding were observed among three Msf SVs, and a cross-reactive Msf polyclonal antibody was generated.
Conclusions:
- Large-scale sequence analysis is vital for understanding N. meningitidis antigenic diversity and guiding vaccine development.
- Variability in Msf, particularly its N-terminal domain and Vn binding, impacts meningococcal pathogenesis and immune evasion.
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